ANALIZ MOLEKULYARNOI STRUKTURY EHLEKTRODNYKH PEKOV I PEKOV SVYAZUYUSHCHIKH S POMOSHCH'YU FIZIKO-KHIMICHESKIKH METODOV
Abstract and keywords
Abstract:
V dannoy stat'e proveden obzor rabot po issledovaniyu molekulyarnoy struktury elektrodnyh pekov i pekov svyazuyuschih fiziko-himicheskimi metodami analiza. Pokazano vliyanie modifikaciy na izmenenie molekulyarnoy struktury pekov svyazuyuschih s pomosch'yu IK spektroskopii. Predstavleny rezul'taty rabot po opredeleniyu sostava poliaromaticheskoy struktury pekov. Proveden sravnitel'nyy analiz rezul'tatov rabot po opredeleniyu strukturno-gruppovogo sostava kamennougol'nyh i neftyanyh pekov. Pokazany fiziko-himicheskie metody opredeleniya mezofaznoy struktury pekov.

Keywords:
kamennougol'nyy pek, elektrodnyy pek, svyazuyuschiy pek, IK-spektroskopiya, EPR-spektroskopiya, YaMR-spektroskopiya, termicheskaya obrabotka pekov, mezofaza, termookislenie
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References

1. Utkin Y.A., Yanko E.A., Soloveichik E.Y., Strakhov V.M. Assessing coal pitch as a binder in anode production. Coke Chem., 2012, 55(9), 342-346. DOI:https://doi.org/10.3103/S1068364X12090098. EDN: https://elibrary.ru/RGFQOB

2. Kuznecov P.N., Marakushina E.N., Buryukin F. A., Ismagilov Z.R. Poluchenie al'ternativnyh pekov iz ugley. Himiya v interesah ustoychivogo razvitiya, 2016, 24(3), 325-333. DOI:https://doi.org/10.15372/KhUR20160307. EDN: https://elibrary.ru/WEJLET

3. Kuznecov P.N., Obuhova A.V., Kuznecova L.I., Buryukin F.A., Pavlenko N.I., Kolesnikova S.M., Kamenskiy E.S., Perminov N.V. Termicheskoe rastvorenie uglya GZh v srede razlichnyh pastoobrazovateley. Himiya tverdogo topliva, 2018, 5, 20-26. DOI:https://doi.org/10.1134/S0023117718050067. EDN: https://elibrary.ru/XWNQNN

4. Kuznecov P.N., Perminov N.V., Kuznecova L.I., Buryukin F.A., Kolesnikova S.M., Kamenskiy E.S., Pavlenko N.I. Termorastvorenie ugley ryada metamorfizma v srede tetralina i antracenovoy frakcii smoly koksovaniya. Himiya tverdogo topliva, 2020, 2, 3-11. DOI:https://doi.org/10.31857/S0023117720020073. EDN: https://elibrary.ru/HJWTEP

5. Sherryuble V.G., Seleznev A.N., Apal'kova G.D. Vyazkoplasticheskie svoystva mass na osnove pekov s razlichnoy temperaturoy razmyagcheniya. Himiya tverdogo topliva, 2003, 5, 17-21. EDN: https://elibrary.ru/OOLGSL

6. Yanko E.Ya. Issledovanie kachestva anodnoy massy, prigotovlennoy na vysokotemperaturnyh pekah. Cvetmet, 1981, 12, 73-76.

7. Ickov M.L, Svoboda R.V., Frolov V.I. Vliyanie temperatury razmyagcheniya svyazuyuschih materialov na eksplutacionnye harakteristiki anodnoy massy. Cvetmet, 1983, 12, 33-35.

8. Cho J.H., Kim M. I., Ji K., Im S. Study of the Molecular-Weight Distribution of Binder Pitches for Carbon Blocks. ACS Omega, 2021, 6(15), 10180-10186. DOI:https://doi.org/10.1021/acsomega.1c00323. EDN: https://elibrary.ru/QDYMEQ

9. Cho J.H., Im S. Fabrication of Binder Pitches Allowing for Low-Temperature Formation and High Coking Values and Examination of Mechanical Properties of Artificial Graphite Blocks Made of Binder Pitches. ACS Omega, 2022, 7(9), 7845–7852. DOIhttps://doi.org/10.1021/acsomega.1c06750. EDN: https://elibrary.ru/FFFEWR

10. Brooks J., Taylor G. The formation of graphitizing carbons from the liquid phase. Carbon, 1965, 3(2), 185-193. DOI:https://doi.org/10.1016/0008-6223(65)90047-3.

11. Taylor G. Development of optical properties of coke during carbonization. Fuel, 1961, 40(6), 465–72.

12. Yuan G., Cui Z. Preparation, Characterization, and Applications of Carbonaceous Mesophase: A Review. Liquid Crystals and Display Technology, 2019, 1-20. DOI:https://doi.org/10.5772/intechopen.88860.

13. Lewis I. Thermal polymerization of aromatic hydrocarbons, Carbon, 1980, 18(3), 191–196. DOI:https://doi.org/10.1016/0008-6223(80)90060-3.

14. Lewis I. Chemistry and development of mesophase in pitch. J. Chim. Phys., 1984, 81, 751–758. DOI:https://doi.org/10.1051/jcp/1984810751.

15. Miyajimaa N., Akatsua T., Ikomab T., Itob O., Randc B, Tanabea Y., Yasudaa E. A role of charge-transfer complex with iodine in the modification of coal tar pitch. Carbon, 2000, 38(13), 1831-1838. DOI:https://doi.org/10.1016/S0008-6223(00)00022-1. EDN: https://elibrary.ru/AICMCP

16. Sun M., Wang L., Zhong J., Yao Q., Chen H., Jiao L., Hao Q., Ma X. Chemical modification with aldehydes on the reduction of toxic PAHs derived from low temperature coal tar pitch. J. Anal. Appl. Pyrolysis, 2020, 148, 104822. DOI:https://doi.org/10.1016/j.jaap.2020.104822. EDN: https://elibrary.ru/EGPJKA

17. Sun M., Ma X.X., Lv B., Dai X.M., Yao Y., Liu Y.Y., Zhao X.L. Gradient separation of ≥300°C distillate form low-temperature coal tar based on formaldehyde reactions. Fuel, 2015, 160, 16-23. DOI:https://doi.org/10.1016/j.fuel.2015.07.029.

18. Sun M., Ma X.X., Yao Q.X., Wang R.C., Ma Y.X., Feng G., Shang J.X., Xu L., Yang Y.H. GC-MS and TG FTIR study of petroleum ether extract and residue from low temperature coal tar. Energ. Fuel, 2001, 25, 1140-1145. DOI:https://doi.org/10.1021/ef101610z.

19. Sun M., Zhang D., Huang M.H., Chen J., Tang X., He C., Ma X.X. Properties and carbonization behavior of asphalt modified with the THF-soluble fraction of a coal liquefaction residue. Petrol. Sci. Technol, 2017, 35, 674-680. DOI:https://doi.org/10.1080/10916466.2016.1271811.

20. Cao G.P., Chen W.J., Liu X.B. Synthesis and thermal properties of the thermosetting resin based on cyano functionalized benzoxazine. Polym. Degrad. Stabil, 2008, 93, 739-744. DOI: j.polymdegradstab.2007.10.002 DOI: https://doi.org/10.1016/j.polymdegradstab.2007.10.002; EDN: https://elibrary.ru/KIDUCB

21. Svitilova J., Machovic V., Kolar F. 9,10-bis(chlormethyl)anthracene-curing agent of coal tar pitch. Acta Geodyn. Geomater, 2006, 3(2), 57-62.

22. Fialkov A.S. Elektronnyy paramagnitnyy rezonans v kamennougol'nom peke. Himiya tverdogo topliva. 1967, 2, 108-110.

23. Bliznyuk A.A., Berveno V.P. Izmenenie nanotekstury i paramagnitnyh harakteristik peka pri formovanii volokna. Polzunovskiy vestnik, 2008, 3, 141-144. EDN: https://elibrary.ru/KZCNIL

24. Delhaes P., Rouillon J.C., Fug G., Singer L.S. Physical properties of a magnetically-oriented carbonaceous mesophase. Carbon, 1979, 17(6), 435-440. DOI:https://doi.org/10.1016/0008-6223(79)90030-7.

25. Privalov V.E., Stepanenko M.A. Kamennougol'nyy pek. M.: Metallurgiya, 1981, 208 s.

26. Fialkov A.S., Tyan S., Samoylov V. S., Smirnov B. N. Obrazovanie mezofazy i spektry EPR pri nizkotemperaturnoy karbonizacii grafitiruyuschihsya veschestv. Doklady AN SSSR, 1971, 198(3), 649-650.

27. Drake J. A. G., Jones D. W., Masonu C. R. Mesophase from Electrode-binder Coal-tar Pitch: An Appraisal of Structural Techniques. J. Chem. Tech. Biotechnol, 1981, 31, 535-540. DOI:https://doi.org/10.1002/jctb.503310172.

28. Gorovoy V. O., Kolosov A. D., Kondrat’ev V. V., Doshlov O. I. Studies of the characteristics of compounded pitch by chromatography-mass spectrometry and NMR of carcinogenic activity. OP Conf. Series: Earth and Environmental Science, 2020, 579, 012092. DOI:https://doi.org/10.1088/1755-1315/579/1/012092. EDN: https://elibrary.ru/TRPQRF

29. Bermejo J., Fernández A.L., Prada V., Granda M., Menéndez R. Monitoring the synthesis of new pitches from coal tar and its fractions by chromatography and related techniques. J. Chromatogr. A, 1999, 849(2), 507 519. DOI:https://doi.org/10.1016/S0021-9673(99)00608-1. EDN: https://elibrary.ru/ADLVGD

30. Domı́nguez A., Blanco C., Santamarı́a R., Granda M., Blanco C.G., Menéndez R. Monitoring coal-tar pitch composition changes during air-blowing by gas chromatography. J. Chromatogr. A, 2004, 1026(1–2), 231-238. DOI:https://doi.org/10.1016/j.chroma.2003.11.067. EDN: https://elibrary.ru/MEJIGP

31. Wallouch R.W., Murty H.N., Heintz E.A. Pyrolysis of coal tar pitch binders. Carbon, 1972, 10(6), 729-735. DOI:https://doi.org/10.1016/0008-6223(72)90080-2.

32. Moskalev I. V., Tiunova T. G., Kisel'kov D. M., Petrovyh A.P., Val'cifer V.A., Strel'nikov V.N. Sinteticheskie peki na osnove antracenovoy frakcii kamennougol'noy smoly. Koks i himiya, 2014, 11, 19-29. EDN: https://elibrary.ru/TBSSIZ

33. Hatano H., Suginobe H. Improvement and control of the quality of binder pitch for graphite electrodes. Fuel, 1989, 68(12), 1503-1506. DOIhttps://doi.org/10.1016/0016-2361(89)90287-1.

34. Apicella B., Tregrossi A., Stanzione F., Ciajolo A., Russo C. Analysis of Petroleum and Coal Tar Pitches as Large PAH. Chemical engineering transactions, 2017, 57, 775-780. DOI:https://doi.org/10.3303/CET1757130.

35. Moskalev I. V., Kisel'kov D. M., Abaturov A. L. Formirovanie izotropnoy mikrostruktury koksa. 1. Mehanizm polucheniya izotropnyh koksov na osnove smesey antracenovoy frakcii s kamennougol'nym pekom. Koks i himiya, 2020, 10, 29-42. EDN: https://elibrary.ru/SVAGGM

36. Moskalev I. V., Kisel'kov D. M., Abaturov A. L. Vliyanie usloviy koksovaniya promyshlennogo vysokotemperaturnogo peka na mikrostrukturu poluchaemogo koksa. Koks i himiya, 2020, 9, 19-33. EDN: https://elibrary.ru/WTIZPJ

37. Petrovyh A.P., Abaturov A. L., Moskalev I. V., Kisel'kov D. M., Yakushev R.M. Termoobrabotka antracenovoy frakcii pod davleniem. Koks i himiya, 2016, 8, 24-37. EDN: https://elibrary.ru/WXQWHT

38. Ovchinnikova S. A., Cheshko F. F., Pityulin I. N., Karchakova V. V. Issledovanie mikrostruktury elektrodnyh pekov OAO "Zaporozhkoks". Koks i himiya, 2010, 1, 34-38. DOI: https://doi.org/10.3103/S1068364X10010072; EDN: https://elibrary.ru/KYQFNB

39. Lapina N. A., Starichenko N. S., Ostrovskiy V. S. Mezofaza v vysokotemperaturnom peke i ee vliyanie na svoystva iskusstvennogo grafita. Koks i himiya, 2012, 9, 22-24. EDN: https://elibrary.ru/PCHLBN

40. Cherkasova T. G., Subbotin S. P., Vasil'eva E. V., Nevedrov A. V., Lapin A. V., Solodov V.S., Vetoshkina V.C. Analiz vozmozhnosti polucheniya mezofaznogo peka metodom termicheskogo rastvoreniya ugley. Tehnologiya organicheskih veschestv: Materialy 84-oy nauchno-tehnicheskoy konferencii professorsko-prepodavatel'skogo sostava, nauchnyh sotrudnikov i aspirantov, posvyaschennoy 90-letnemu yubileyu BGTU i Dnyu belorusskoy nauki (s mezhdunarodnym uchastiem). 2020, 215-218. EDN: https://elibrary.ru/AXTPYQ

41. Mochalov V.V., Pistrova P.D., Zaydis E.G. Osobennosti nizkotemperaturnoy karbonizacii pekov razlichnoy stepeni kondensirovannosti. Koks i himiya, 1985,1, 31-35. DOI: https://doi.org/10.2307/25305339

42. Yuan G., Xue Z., Cui Z., Westwood A., Dong Z., Cong Y., Zhang J., Zhu H., Li X. Constructing the bridge from isotropic to anisotropic pitches for preparing pitch-based carbon fibers with tunable structures and properties. ACS Omega, 2020, 5(34), 21948-21960. DOI:https://doi.org/10.1021/acsomega.0c03226. EDN: https://elibrary.ru/IOOWCG

43. Cheng X., Zha Q., Li X., Yang X. Modified characteristics of mesophase pitch prepared from coal tar pitch by adding waste polystyrene. Fuel Processing Technology, 2008, 89(12), 1436-1441. DOI:https://doi.org/10.1016/j.fuproc.2008.07.003.

44. Sozinov S. A., Popova A.N., Ismagtlov Z.R. Issledovanie morfologii i struktury kamennougol'nogo peka. Himiya v interesah ustoychivogo razvitiya, 2023, 31(2), 255-262. DOI:https://doi.org/10.15372/KhUR2023463. EDN: https://elibrary.ru/YDROOP

45. Vasyutinskaya A.G., Aldashev R.A., Korolev Yu.M., Mansurov Z.A. Rentgenograficheskoe issledovanie pekov poluchennyh iz smol ekstrakcii nizkotemperaturnyh sazh. Neftehimiya, 2000, 40(1), 58-61. EDN: https://elibrary.ru/AXIZDP

46. Wang Y.G., Chang Y.C., Ishida S., Korai Y., Mochida I. Stabilization and carbonization properties of mesocarbon microbeads (MCMB) prepared from a synthetic naphthalene isotropic pitch. Carbon, 1999, 37, 969-976. DOI:https://doi.org/10.1016/S0008-6223(98)00292-9. EDN: https://elibrary.ru/ACYCQP

47. Drbohlav J., Stevenson W.T.K. The oxidative stabilization and carbonization of a synthetic mesophase pitch, part I: The oxidative stabilization process. Carbon, 1995, 33, 693. DOI:https://doi.org/10.1016/0008-6223(95)00011-2. EDN: https://elibrary.ru/AOIBPV

48. Silverstein R.M., Bassler G.C., Morrill T.C. Spectrometric identification of organic compounds. New York, 1991, 481.

49. Dumont M., Chollon G., Dourges M.A., Pailler R., Bourrat X., Naslain R., Bruneel J.L, Couzi M. Chemical, microstructural and thermal analyses of a naphthalene-derived mesophase pitch. Carbon, 2001,40, 1475-1486. DOI:https://doi.org/10.1016/S0008-6223(01)00320-7. EDN: https://elibrary.ru/YKSPCA

50. Cheng X.L., Zha Q.F., Zhong J.T., Yang X.J. Needle coke formation derived from co-carbonization of ethylene tar pitch and polystyrene. Fuel, 2009, 88, 2188-2192. DOI:https://doi.org/10.1016/j.fuel.2009.05.006.

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